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An overview of operating parameters and conditions in hydrocyclones for enhanced separations

机译:用于增强分离的水力旋流器的操作参数和条件概述

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摘要

Hydrocyclones are widely employed in both heavy and light industries. However, exact mechanisms underlying enhanced-separation technologies developed by optimizing operating parameters and conditions in hydro cyclones remain unclear. Accordingly, many research groups have conducted numerous investigations to expand the application range of hydrocyclones by optimizing operating parameters and conditions. This paper presents a comprehensive state-of-the-art review of the aforementioned hydrocyclone enhanced-separation technologies, which are classified into two groups: (i) operating parameters, including feed flow rate, feed pressure, feed density difference, feed particle parameters (concentration, size, shape, and arrangement), and feed fluid parameters (viscosity and rheology); and (ii) operating conditions, including electrical hydrocyclones, magnetic hydrocyclones (electromagnetic field and permanent magnetic field), magnetic fluids hydrocyclones, electro-chemical hydrocyclones, flocculant-assisted hydrocyclones, hydrocyclones enhanced by flotation, hydrocyclones enhanced by control particles; hydrocyclones enhanced by adjusting back pressure, and hydrocyclones enhanced by monitoring and automatic control. These enhanced-separation technologies were analyzed and summarized based on the critical separation-performance parameters, such as separation efficiency, cut size, split ratio, energy consumption, capacity, and separation sharpness. It is hoped that both reviewed contents and proposed challenges may be helpful to the researchers and eventually yield some perspective knowledge, which results in the improvement of economic feasibility of separation by hydrocyclones.
机译:氢旋流器在重型和轻型工业中广泛采用。然而,通过优化运行参数和水力旋风器中的操作参数和条件开发的增强分离技术的精确机制仍不清楚。因此,许多研究组通过优化操作参数和条件来扩大氢旋流素的应用范围来进行许多研究。本文提出了对上述水力旋流增强分离技术的全面的最先进的审查,分为两组:(i)操作参数,包括进料流量,进料压力,馈电密度差,饲料粒子参数(浓度,尺寸,形状和布置),以及饲料流体参数(粘度和流变学); (ii)操作条件,包括电氢旋流酮,磁性碳糖酮(电磁场和永磁场),磁性流体氢旋流酮,电化学氢旋水,絮凝剂辅助氢旋风酮,浮选增强的碳氢筋,通过对照颗粒增强氢旋流素;通过调节背部压力和通过监测和自动控制增强氢旋流器来增强含水旋流素。基于临界分离性能参数分析和总结这些增强分离技术,例如分离效率,切割尺寸,分流比,能量消耗,容量和分离清晰度。希望对研究人员有所帮助,并最终会产生一些透视知识,这导致氢旋流素分离的经济可行性提高了一些透视知识。

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